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Cetyl alcohol is minimally soluble in water, with a solubility of around 0.005 g/100 mL at room temperature. It is a fatty alcohol and its solubility in water is limited due to its hydrophobic nature.
As more alcohol is added to water, the solubility of alcohol in water generally increases. This is because alcohol molecules can form hydrogen bonds with water molecules, making it easier for the alcohol to dissolve. However, there may be a limit to how much alcohol can dissolve in water depending on the type of alcohol and temperature.
Amphetamine is "Soluble in water" according to the MSDS sheet Ethyl Alcohol is easily soluble in cold water, hot water and soluble in methanol, diethyl ether, acetone.
Acetic acid is soluble in water, alcohol, and other organic solvents. Its solubility in water is about 8.3 mol/L at room temperature.
The solubility of CaF2 in water increases with temperature. At 25C, the solubility of CaF2 in water is about 0.0016 g/100 mL. As the temperature rises, the solubility also increases.
the temperature of the water (table G in the chemistry reference table)
Temperature is directly proportional to solubility, which means that an increase in temperature will also increase the solubility. Sugar will dissolve faster in hot water.
The relationship between temperature and oxygen solubility in water is inverse. As temperature increases, the solubility of oxygen in water decreases. This means that colder water can hold more dissolved oxygen than warmer water.
The impact of temperature on glucose solubility in water is that as temperature increases, the solubility of glucose also increases. This means that more glucose can dissolve in water at higher temperatures compared to lower temperatures.
Alcohol can increase the solubility of certain substances in water by disrupting the hydrogen bonding between water molecules. This can lead to better dissolution of non-polar substances in water.
The graph showing an increase in solubility of potassium nitrate with increasing temperature best describes its solubility in water. This is because potassium nitrate has a positive solubility-temperature relationship, meaning its solubility increases as the temperature of the water increases.
The solubility of oxygen in water decreases as temperature increases. This means that warmer water can hold less oxygen compared to colder water.